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Experimental Validation of Fuzzy-Tuned AWPI Controller-Based Chopper Driven PMDC Motor

机译:基于模糊调整的AWPI斩波驱动PMDC电机的实验验证

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摘要

Chopper driven Permanent magnet DC (PMDC) motors are used to drill bone and fix the screws in orthopaedic surgeries. The drive of the motor employs a traditional or modern controller that has an inner current control loop and an outer speed control loop. As an alternative to traditional proportional integral (PI) controller-based chopper drives, this paper proposes a fuzzy-tuned anti-windup PI (AWPI) controller-based chopper for the speed control of PMDC motors used in orthopaedic surgeries. The proposed scheme was simulated using Matlab/Simulink and physically realized for validation. It is ascertained from the performance analysis that the proposed fuzzy-tuned AWPI based scheme exhibits better steady-state and transient-state responses when compared with traditional PI and AWPI controllers.
机译:斩波器驱动的永磁直流(PMDC)电机用于在整形外科中钻孔和固定螺钉。电动机的驱动器采用传统或现代的控制器,该控制器具有内部电流控制回路和外部速度控制回路。作为基于比例积分(PI)控制器的传统斩波器驱动器的替代方案,本文提出了一种基于模糊调整的基于抗饱和PI(AWPI)控制器的斩波器,用于骨科手术中PMDC电动机的速度控制。所提出的方案使用Matlab / Simulink进行了仿真,并通过物理方式进行了验证。从性能分析可以确定,与传统的PI和AWPI控制器相比,基于模糊调整的基于AWPI的方案表现出更好的稳态和瞬态响应。

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